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本文(ISO 19108 CORR 1-2006 Geographic information - Temporal schema Technical Corrigendum 1《地理信息 暂存概要 技术勘误1》.pdf)为本站会员(orderah291)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ISO 19108 CORR 1-2006 Geographic information - Temporal schema Technical Corrigendum 1《地理信息 暂存概要 技术勘误1》.pdf

1、ICS 35.240.70 Ref. No. ISO 19108:2002/Cor.1:2006(E) ISO 2006 All rights reserved Published in Switzerland INTERNATIONAL STANDARD ISO 19108:2002 TECHNICAL CORRIGENDUM 1 Published 2006-10-15 INTERNATIONAL ORGANIZATION FOR STANDARDIZATION ORGANISATION INTERNATIONALE DE NORMALISATIONGeographic informati

2、on Temporal schema TECHNICAL CORRIGENDUM 1 Information gographique Schma temporel RECTIFICATIF TECHNIQUE 1 Technical Corrigendum 1 to ISO 19108:2002 was prepared by Technical Committee ISO/TC 211, Geographic information/Geomatics. Page 3, Clause 4 Replace 4.1.5 with the following: 4.1.5 edge 1-dimen

3、sional topological primitive ISO 19107 NOTE The geometric realization of an edge is a curve. The boundary of an edge is the set of one or two nodes associated to the edge within a topological complex. ISO 19108:2002/Cor.1:2006(E) 2 ISO 2006 All rights reservedReplace 4.1.8 with the following: 4.1.8

4、feature association relationship that links instances of one feature type with instances of the same or a different feature type ISO 19110 NOTE 1 A feature association may occur as a type or an instance. Feature association type or feature association instance is used when only one is meant. NOTE 2

5、Feature associations include aggregation of features. Replace 4.1.9 with the following: 4.1.9 feature attribute characteristic of a feature ISO 19101 NOTE A feature attribute has a name, a data type and a value domain associated to it. Page 4, Clause 4 Replace 4.1.15 with the following: 4.1.15 geome

6、tric primitive geometric object representing a single, connected, homogeneous element of space ISO 19107 NOTE Geometric primitives are non-decomposed objects that present information about geometric configuration. They include points, curves, surfaces and solids. Page 9, subclause 5.2.3.2 Replace 5.

7、2.3.2 a) with the following: a) position:TM_TemporalPosition shall provide the position of this TM_Instant. The TM_TemporalPosition shall be associated with a single temporal reference system, as specified in 5.3. An instance of TM_Instant is an identifiable object, while an instance of TM_TemporalP

8、osition is a data value. The TM_TemporalPosition of a given TM_Instant may be replaced by an equivalent TM_TemporalPosition associated with a different temporal reference system. ISO 19108:2002/Cor.1:2006(E) ISO 2006 All rights reserved 3Page 10, subclause 5.2.3.5 Replace 5.2.3.5 b) with the followi

9、ng: b) If this TM_Primitive is a TM_Period and other is a TM_Instant, the operation shall return a value for TM_RelativePosition as follows: Returns: If: Before self.end.position other.position BegunBy self.begin.position = other.position After self.begin.position other.position Page 11, subclause 5

10、.2.3.5 Replace 5.2.3.5 d) with the following: d) If both this TM_Primitive and other are TM_Periods, the operation shall return a value for TM_RelativePosition as follows: Returns: If: Before self.end.position other.begin.position AND self.end.position other.end.position During self.begin.position o

11、ther.begin.position AND self.end.position other.end.position Equals self.begin.position = other.begin.position AND self.end.position=other.end.position OverlappedBy self.begin.position other.begin.position AND self.begin.position other.end.position Ends self.begin.position other.begin.position AND s

12、elf.end.position = other.end.position EndedBy self.begin.position other.end.position The operation shall raise an exception if any input value of TM_TemporalPosition is indeterminate. Page 12, subclause 5.2.3.7 Replace 5.2.3.7 e) with the following: e) timeIndicator 01:CharacterString = “T“ shall be

13、 included whenever the sequence includes values for units of less than a day. ISO 19108:2002/Cor.1:2006(E) 4 ISO 2006 All rights reservedPage 14, subclause 5.2.4.2 Replace 5.2.4.2 with the following: A topological primitive represents a single non-decomposable element of topology and its relationshi

14、ps to other topological primitives within a topological complex. The two topological primitives relevant for temporal information are the node, which is 0-dimensional, and the edge, which is 1-dimensional. In the temporal schema, they are represented by two subclasses of TM_TopologicalPrimitive: TM_

15、Node and TM_Edge (Figure 6). When an application includes information about temporal position as well as connectivity, a TM_TopologicalPrimitive may be associated with a TM_GeometricPrimitive of the same dimension. Because topological primitives are intended to provide information about connectivity

16、, their most significant characteristics are the associations that link them to each other. Another consequence is the requirement that every TM_TopologicalPrimitive shall be a member of one and only one TM_TopologicalComplex. Page 17, subclause 5.3.1 Replace 5.3.1 b) with the following: b) domainOf

17、Validity:EX_Extent shall identify the space and time within which the TM_ReferenceSystem is applicable. The data type EX_Extent is specified in ISO/TS 19103. It permits a description of both spatial and temporal extent. This attribute shall be used whenever an application schema includes TM_Temporal

18、Positions referenced to a TM_ReferenceSystem which has a valid extent that is less than the extent of a data set containing such values. Page 18, subclause 5.3.2.1 Replace Figure 8 with the following: Figure 8 Calendar and clock ISO 19108:2002/Cor.1:2006(E) ISO 2006 All rights reserved 5Page 23, sub

19、clause 5.4.5.1 Replace 5.4.5.1 a) with the following: a) coordinateValue:Number holds the distance from the scale origin expressed as a multiple of the standard interval associated with the temporal coordinate system. Page 33, subclause B.1.2 Replace the first paragraph with the following: Figure B.

20、2 illustrates an alternative way of using a TM_GeometricPrimitive for a temporal feature attribute. In this case, the feature attribute periodOfOccupancy is represented as a UML class that is linked to Building by a UML association. PeriodOfOccupancy is a subtype of TM_Period. It inherits the associ

21、ation roles begin and end from TM_Period, but it restricts the data type in each case to DateTime. (At the TM_Period level, the data type for these attributes is TM_TemporalPosition.) It also inherits the interfaces TM_Order, from which it uses the operation relativePosition(other : TM_Primitive) :

22、TM_RelativePosition, and TM_Separation, from which it uses the operations length() : TM_Duration and distance (other : TM_GeometricPrimitive) : TM_Duration. Page 38-40, Table C.1 Replace row 3 with the following: 3 domainOfValidity Limits of space and time within which the temporal reference system

23、is used C/ Extent of temporal reference system less than extent of data set in which it is used? N EX_Extent ISO/TS 19103 Replace row 8 with the following: 8 referenceFrame The calendar eras associated with the calendar being described M N Role name TM_CalendarEra Replace row 9 with the following: 9

24、 timeBasis The clock that is used with this calendar to define temporal position within a calendar day O 1 Role name TM_Clock Replace row 18 with the following: 18 referenceTime Time of the reference event for this clock M 1 TM_ClockTime Time in the clock being described Replace row 28 with the foll

25、owing: 28 component Ordinal eras that make up the highest level of this ordinal reference system M 1 Role name TM_OrdinalEra ISO 19108:2002/Cor.1:2006(E) 6 ISO 2006 All rights reservedReplace row 33 with the following: 33 member Ordinal eras that subdivide this ordinal era M 1 Role name TM_OrdinalEra Page 44, Table D.2 Replace row 10 with the following: TM_CalendarEra.julianReference 1721423.25

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